Influence of a magnetic field on the viscosity of a dilute gas consisting of linear molecules.
File(s)paper 110_viscomagnetic_JCP_2015.pdf (2.06 MB)
Published version
Author(s)
Hellmann, R
Vesovic, V
Type
Journal Article
Abstract
The viscomagnetic effect for two linear molecules, N2 and CO2, has been calculated in the dilute-gas limit directly from the most accurate ab initio intermolecular potential energy surfaces presently available. The calculations were performed by means of the classical trajectory method in the temperature range from 70 K to 3000 K for N2 and 100 K to 2000 K for CO2, and agreement with the available experimental data is exceptionally good. Above room temperature, where no experimental data are available, the calculations provide the first quantitative information on the magnitude and the behavior of the viscomagnetic effect for these gases. In the presence of a magnetic field, the viscosities of nitrogen and carbon dioxide decrease by at most 0.3% and 0.7%, respectively. The results demonstrate that the viscomagnetic effect is dominated by the contribution of the jj¯ polarization at all temperatures, which shows that the alignment of the rotational axes of the molecules in the presence of a magnetic field is primarily responsible for the viscomagnetic effect.
Date Issued
2015-12-07
Date Acceptance
2015-11-12
Citation
Journal of Chemical Physics, 2015, 143 (21), pp.214303-214303
ISSN
1089-7690
Publisher
American Institute of Physics (AIP)
Start Page
214303
End Page
214303
Journal / Book Title
Journal of Chemical Physics
Volume
143
Issue
21
Copyright Statement
Copyright ©2015 American Institute of Physics. This article may be downloaded for personal use only. Any other use requires prior permission of the author and the American Institute of Physics. The following article appeared in The Journal of Chemical Physics 143, 214303 (2015); doi: 10.1063/1.4936417 and may be found at https://dx.doi.org/10.1063/1.4936417
Subjects
Viscosity
Viscomagnetic effect
Kinetic theory
Publication Status
Published
Article Number
214303
Date Publish Online
2015-12-01